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Biochemical Characterization of the Drosophila Wingless Signaling Pathway Based on RNA Interference

机译:基于RNA干扰的果蝇无翅信号通路的生化特征

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Regulation of Armadillo (Arm) protein levels through ubiquitin-mediated degradation plays a central role in the Wingless (Wg) signaling. Although zeste-white3 (Zw3)-mediated Arm phosphorylation has been implicated in its degradation, we have recently shown that casein kinase Iα (CKIα) also phosphorylates Arm and induces its degradation. However, it remains unclear how CKIα and Zw3, as well as other components of the Arm degradation complex, regulate Arm phosphorylation in response to Wg. In particular, whether Wg signaling suppresses CKIα- or Zw3-mediated Arm phosphorylaytion in vivo is unknown. To clarify these issues, we performed a series of RNA interference (RNAi)-based analyses in Drosophila S2R+ cells by using antibodies that specifically recognize Arm phosphorylated at different serine residues. These analyses revealed that Arm phosphorylation at serine-56 and at threonine-52, serine-48, and serine-44, is mediated by CKIα and Zw3, respectively, and that Zw3-directed Arm phosphorylation requires CKIα-mediated priming phosphorylation. Daxin stimulates Zw3- but not CKIα-mediated Arm phosphorylation. Wg suppresses Zw3- but not CKIα-mediated Arm phosphorylation, indicating that a vital regulatory step in Wg signaling is Zw3-mediated Arm phosphorylation. In addition, further RNAi-based analyses of the other aspects of the Wg pathway clarified that Wg-induced Dishevelled phosphoylation is due to CKIα and that presenilin and protein kinase A play little part in the regulation of Arm protein levels in Drosophila tissue culture cells.
机译:通过泛素介导的降解调节犰狳(Arm)蛋白水平在无翅(Wg)信号传导中起着核心作用。尽管zeste-white3(Zw3)介导的Arm磷酸化与降解有关,但我们最近发现酪蛋白激酶Iα(CKIα)也使Arm磷酸化并诱导其降解。然而,尚不清楚CKIα和Zw3以及Arm降解复合物的其他成分如何响应Wg来调节Arm磷酸化。特别是,Wg信号在体内是否抑制CKIα或Zw3介导的Arm磷酸化尚不清楚。为了澄清这些问题,我们通过使用特异识别在不同丝氨酸残基磷酸化的Arm的抗体,在果蝇S2R +细胞中进行了一系列基于RNAi(RNAi)的分析。这些分析表明,丝氨酸56和苏氨酸52,丝氨酸48和丝氨酸44的Arm磷酸化分别由CKIα和Zw3介导,而Zw3导向的Arm磷酸化需要CKIα介导的引发磷酸化。大新刺激Zw3,但不刺激CKIα介导的Arm磷酸化。 Wg抑制Zw3,但不抑制CKIα介导的Arm磷酸化,表明Wg信号转导的重要调节步骤是Zw3介导的Arm磷酸化。此外,对Wg途径其他方面的进一步基于RNAi的分析表明,Wg诱导的Disheveled磷酸化是CKIα引起的,早老素和蛋白激酶A在果蝇中Arm蛋白水平的调节中起着很小的作用。 / em>组织培养细胞。

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